Smallpox subunit vaccine produced in planta confers protection in mice

被引:49
作者
Golovkin, Maxim
Spitsin, Sergei
Andrianov, Vyacheslav
Smirnov, Yuriy
Xiao, Yuhong
Pogrebnyak, Natalia
Markley, Karen
Brodzik, Robert
Gleba, Yuri
Isaacs, Stuart N.
Koprowski, Hilary [1 ]
机构
[1] Thomas Jefferson Univ, Biotechnol Fdn Labs, Philadelphia, PA 19107 USA
[2] Univ Penn, Sch Med, Dept Med, Philadelphia, PA 19104 USA
[3] Biozentrum, Icon Genet, D-06120 Halle, Germany
关键词
plant biotechnology; transgenic plants; B5; glycoprotein; recombinant antigen;
D O I
10.1073/pnas.0701451104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We report here the in planta production of the recombinant vaccinia virus B5 antigenic domain (pB5), an attractive component of a subunit vaccine against smallpox. The antigenic domain was expressed by using efficient transient and constitutive plant expression systems and tested by various immunization routes in two animal models. Whereas oral administration in mice or the minipig with collard-derived insoluble pB5 did not generate an anti-B5 immune response, intranasal administration of soluble pB5 led to a rise of B5-specific immunoglobulins, and parenteral immunization led to a strong anti-B5 immune response in both mice and the minipig. Mice immunized i.m. with pB5 generated an antibody response that reduced virus spread in vitro and conferred protection from challenge with a lethal dose of vaccinia virus. These results indicate the feasibility of producing safe and inexpensive subunit vaccines by using plant production systems.
引用
收藏
页码:6864 / 6869
页数:6
相关论文
共 46 条
[1]   Epitope-mapping studies define two major neutralization sites on the vaccinia virus extracellular enveloped virus glycoprotein B5R [J].
Aldaz-Carroll, L ;
Whitbeck, JC ;
de Leon, MP ;
Lou, H ;
Hirao, L ;
Isaacs, SN ;
Moss, B ;
Eisenberg, RJ ;
Cohen, GH .
JOURNAL OF VIROLOGY, 2005, 79 (10) :6260-6271
[2]   Antibodies against the extracellular enveloped virus B5R protein are mainly responsible for the EEV neutralizing capacity of vaccinia immune globulin [J].
Bell, E ;
Shamim, M ;
Whitbeck, JC ;
Sfyroera, G ;
Lambris, JD ;
Isaacs, SN .
VIROLOGY, 2004, 325 (02) :425-431
[3]   Constitutive expression of the β-ketothiolase gene in transgenic plants.: A major obstacle for obtaining polyhydroxybutyrate-producing plants [J].
Bohmert, K ;
Balbo, I ;
Steinbüchel, A ;
Tischendorf, G ;
Willmitzer, L .
PLANT PHYSIOLOGY, 2002, 128 (04) :1282-1290
[4]   Overexpression of human erythropoietin (EPO) affects plant morphologies:: retarded vegetative growth in tobacco and male sterility in tobacco and Arabidopsis [J].
Cheon, BY ;
Kim, HJ ;
Oh, KH ;
Bahn, SC ;
Ahn, JH ;
Choi, JW ;
Ok, SH ;
Bae, JM ;
Shin, JS .
TRANSGENIC RESEARCH, 2004, 13 (06) :541-549
[5]   THE VACCINIA VIRUS 42-KDA ENVELOPE PROTEIN IS REQUIRED FOR THE ENVELOPMENT AND EGRESS OF EXTRACELLULAR VIRUS AND FOR VIRUS VIRULENCE [J].
ENGELSTAD, M ;
SMITH, GL .
VIROLOGY, 1993, 194 (02) :627-637
[6]   A CONSTITUTIVELY EXPRESSED VACCINIA GENE ENCODES A 42-KDA GLYCOPROTEIN RELATED TO COMPLEMENT CONTROL FACTORS THAT FORMS PART OF THE EXTRACELLULAR VIRUS ENVELOPE [J].
ENGELSTAD, M ;
HOWARD, ST ;
SMITH, GL .
VIROLOGY, 1992, 188 (02) :801-810
[7]  
Enserink M, 2004, SCIENCE, V304, P809
[8]   Immunization with a single extracellular enveloped virus protein produced in bacteria provides partial protection from a lethal orthopoxvirus infection in a natural host [J].
Fang, M ;
Cheng, H ;
Dai, ZP ;
Bu, ZM ;
Sigal, LJ .
VIROLOGY, 2006, 345 (01) :231-243
[9]  
FENNER F, 1988, WHO
[10]   Protective immunity to vaccinia virus induced by vaccination with multiple recombinant outer membrane proteins of intracellular and extracellular virions [J].
Fogg, C ;
Lustig, S ;
Whitbeck, JC ;
Eisenberg, RJ ;
Cohen, GH ;
Moss, B .
JOURNAL OF VIROLOGY, 2004, 78 (19) :10230-10237